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rileya@google.com589708b2012-07-26 20:04:23 +00001/*
2 * Copyright 2012 Google Inc.
3 *
4 * Use of this source code is governed by a BSD-style license that can be
5 * found in the LICENSE file.
6 */
7
fmalitabc590c02016-02-22 09:12:33 -08008#include "Sk4fLinearGradient.h"
Matt Sarett6cc6ae752017-04-18 18:29:12 -04009#include "SkColorSpaceXformer.h"
rileya@google.com589708b2012-07-26 20:04:23 +000010#include "SkLinearGradient.h"
bungeman06ca8ec2016-06-09 08:01:03 -070011#include "SkRefCnt.h"
rileya@google.com589708b2012-07-26 20:04:23 +000012
fmalitabc590c02016-02-22 09:12:33 -080013// define to test the 4f gradient path
fmalita55430a62016-02-23 13:26:28 -080014// #define FORCE_4F_CONTEXT
fmalitabc590c02016-02-22 09:12:33 -080015
reedf3182eb2015-11-17 08:12:19 -080016static const float kInv255Float = 1.0f / 255;
17
rileya@google.com589708b2012-07-26 20:04:23 +000018static inline int repeat_8bits(int x) {
19 return x & 0xFF;
20}
21
rileya@google.com589708b2012-07-26 20:04:23 +000022static inline int mirror_8bits(int x) {
rileya@google.com589708b2012-07-26 20:04:23 +000023 if (x & 256) {
24 x = ~x;
25 }
26 return x & 255;
rileya@google.com589708b2012-07-26 20:04:23 +000027}
28
mtkleincc695fe2014-12-10 10:29:19 -080029static SkMatrix pts_to_unit_matrix(const SkPoint pts[2]) {
rileya@google.com589708b2012-07-26 20:04:23 +000030 SkVector vec = pts[1] - pts[0];
31 SkScalar mag = vec.length();
32 SkScalar inv = mag ? SkScalarInvert(mag) : 0;
33
34 vec.scale(inv);
mtkleincc695fe2014-12-10 10:29:19 -080035 SkMatrix matrix;
36 matrix.setSinCos(-vec.fY, vec.fX, pts[0].fX, pts[0].fY);
37 matrix.postTranslate(-pts[0].fX, -pts[0].fY);
38 matrix.postScale(inv, inv);
39 return matrix;
rileya@google.com589708b2012-07-26 20:04:23 +000040}
41
Florin Malita4aed1382017-05-25 10:38:07 -040042static bool use_4f_context(const SkShaderBase::ContextRec& rec, uint32_t flags) {
fmalita55430a62016-02-23 13:26:28 -080043#ifdef FORCE_4F_CONTEXT
fmalitabc590c02016-02-22 09:12:33 -080044 return true;
45#else
Florin Malita4aed1382017-05-25 10:38:07 -040046 return rec.fPreferredDstType == SkShaderBase::ContextRec::kPM4f_DstType
fmalita55430a62016-02-23 13:26:28 -080047 || SkToBool(flags & SkLinearGradient::kForce4fContext_PrivateFlag);
fmalitabc590c02016-02-22 09:12:33 -080048#endif
49}
50
rileya@google.com589708b2012-07-26 20:04:23 +000051///////////////////////////////////////////////////////////////////////////////
52
reedaddf2ed2014-08-11 08:28:24 -070053SkLinearGradient::SkLinearGradient(const SkPoint pts[2], const Descriptor& desc)
mtkleincc695fe2014-12-10 10:29:19 -080054 : SkGradientShaderBase(desc, pts_to_unit_matrix(pts))
rileya@google.com589708b2012-07-26 20:04:23 +000055 , fStart(pts[0])
mtkleincc695fe2014-12-10 10:29:19 -080056 , fEnd(pts[1]) {
rileya@google.com589708b2012-07-26 20:04:23 +000057}
58
reed60c9b582016-04-03 09:11:13 -070059sk_sp<SkFlattenable> SkLinearGradient::CreateProc(SkReadBuffer& buffer) {
reed9fa60da2014-08-21 07:59:51 -070060 DescriptorScope desc;
61 if (!desc.unflatten(buffer)) {
halcanary96fcdcc2015-08-27 07:41:13 -070062 return nullptr;
reed9fa60da2014-08-21 07:59:51 -070063 }
64 SkPoint pts[2];
65 pts[0] = buffer.readPoint();
66 pts[1] = buffer.readPoint();
brianosmane25d71c2016-09-28 11:27:28 -070067 return SkGradientShader::MakeLinear(pts, desc.fColors, std::move(desc.fColorSpace), desc.fPos,
68 desc.fCount, desc.fTileMode, desc.fGradFlags,
69 desc.fLocalMatrix);
reed9fa60da2014-08-21 07:59:51 -070070}
rileya@google.com589708b2012-07-26 20:04:23 +000071
commit-bot@chromium.org8b0e8ac2014-01-30 18:58:24 +000072void SkLinearGradient::flatten(SkWriteBuffer& buffer) const {
rileya@google.com589708b2012-07-26 20:04:23 +000073 this->INHERITED::flatten(buffer);
74 buffer.writePoint(fStart);
75 buffer.writePoint(fEnd);
76}
77
Florin Malita4aed1382017-05-25 10:38:07 -040078SkShaderBase::Context* SkLinearGradient::onMakeContext(
Herb Derby83e939b2017-02-07 14:25:11 -050079 const ContextRec& rec, SkArenaAlloc* alloc) const
80{
fmalita55430a62016-02-23 13:26:28 -080081 return use_4f_context(rec, fGradFlags)
Herb Derby83e939b2017-02-07 14:25:11 -050082 ? CheckedMakeContext<LinearGradient4fContext>(alloc, *this, rec)
83 : CheckedMakeContext< LinearGradientContext>(alloc, *this, rec);
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +000084}
85
Florin Malita47e55a52017-06-06 12:26:54 -040086SkShaderBase::Context* SkLinearGradient::onMakeBurstPipelineContext(
87 const ContextRec& rec, SkArenaAlloc* alloc) const {
88
89 // TODO: refine heuristic.
90 if (fColorCount <= 8) {
91 return nullptr;
92 }
93 return CheckedMakeContext<LinearGradient4fContext>(alloc, *this, rec);
94}
95
Mike Kleina3771842017-05-04 19:38:48 -040096bool SkLinearGradient::adjustMatrixAndAppendStages(SkArenaAlloc* alloc,
97 SkMatrix* matrix,
98 SkRasterPipeline* p) const {
99 *matrix = SkMatrix::Concat(fPtsToUnit, *matrix);
100 // If the gradient is less than a quarter of a pixel, this falls into the
101 // subpixel gradient code handled on a different path.
102 SkVector dx = matrix->mapVector(1, 0);
Mike Kleine7598532017-05-11 11:29:29 -0400103 if (dx.fX >= 4) {
104 return false;
Herb Derby7b4202d2017-04-10 10:52:34 -0400105 }
Florin Malitac86e4702017-01-20 08:41:34 -0500106 return true;
107}
108
Matt Sarett6cc6ae752017-04-18 18:29:12 -0400109sk_sp<SkShader> SkLinearGradient::onMakeColorSpace(SkColorSpaceXformer* xformer) const {
110 SkPoint pts[2] = { fStart, fEnd };
111 SkSTArray<8, SkColor> xformedColors(fColorCount);
112 xformer->apply(xformedColors.begin(), fOrigColors, fColorCount);
113 return SkGradientShader::MakeLinear(pts, xformedColors.begin(), fOrigPos, fColorCount,
114 fTileMode, fGradFlags, &this->getLocalMatrix());
115}
116
reedf3182eb2015-11-17 08:12:19 -0800117// This swizzles SkColor into the same component order as SkPMColor, but does not actually
118// "pre" multiply the color components.
119//
120// This allows us to map directly to Sk4f, and eventually scale down to bytes to output a
121// SkPMColor from the floats, without having to swizzle each time.
122//
123static uint32_t SkSwizzle_Color_to_PMColor(SkColor c) {
124 return SkPackARGB32NoCheck(SkColorGetA(c), SkColorGetR(c), SkColorGetG(c), SkColorGetB(c));
125}
126
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000127SkLinearGradient::LinearGradientContext::LinearGradientContext(
reedf3182eb2015-11-17 08:12:19 -0800128 const SkLinearGradient& shader, const ContextRec& ctx)
129 : INHERITED(shader, ctx)
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000130{
reedf3182eb2015-11-17 08:12:19 -0800131 // setup for Sk4f
fmalita748d6202016-05-11 11:39:58 -0700132 const int count = shader.fColorCount;
133 SkASSERT(count > 1);
134
reedf3182eb2015-11-17 08:12:19 -0800135 fRecs.setCount(count);
136 Rec* rec = fRecs.begin();
137 if (shader.fOrigPos) {
138 rec[0].fPos = 0;
139 SkDEBUGCODE(rec[0].fPosScale = SK_FloatNaN;) // should never get used
140 for (int i = 1; i < count; ++i) {
141 rec[i].fPos = SkTPin(shader.fOrigPos[i], rec[i - 1].fPos, 1.0f);
lsalzmanf2b86622016-01-22 14:03:02 -0800142 float diff = rec[i].fPos - rec[i - 1].fPos;
143 if (diff > 0) {
144 rec[i].fPosScale = 1.0f / diff;
145 } else {
146 rec[i].fPosScale = 0;
147 }
reedf3182eb2015-11-17 08:12:19 -0800148 }
reedf3182eb2015-11-17 08:12:19 -0800149 } else {
150 // no pos specified, so we compute evenly spaced values
151 const float scale = float(count - 1);
fmalita748d6202016-05-11 11:39:58 -0700152 const float invScale = 1.0f / scale;
reedf3182eb2015-11-17 08:12:19 -0800153 for (int i = 0; i < count; ++i) {
154 rec[i].fPos = i * invScale;
155 rec[i].fPosScale = scale;
156 }
157 }
fmalita748d6202016-05-11 11:39:58 -0700158 rec[count - 1].fPos = 1; // overwrite the last value just to be sure we end at 1.0
reedf3182eb2015-11-17 08:12:19 -0800159
160 fApplyAlphaAfterInterp = true;
161 if ((shader.getGradFlags() & SkGradientShader::kInterpolateColorsInPremul_Flag) ||
162 shader.colorsAreOpaque())
163 {
164 fApplyAlphaAfterInterp = false;
165 }
166
167 if (fApplyAlphaAfterInterp) {
168 // Our fColor values are in PMColor order, but are still unpremultiplied, allowing us to
169 // interpolate in unpremultiplied space first, and then scale by alpha right before we
170 // convert to SkPMColor bytes.
171 const float paintAlpha = ctx.fPaint->getAlpha() * kInv255Float;
172 const Sk4f scale(1, 1, 1, paintAlpha);
173 for (int i = 0; i < count; ++i) {
174 uint32_t c = SkSwizzle_Color_to_PMColor(shader.fOrigColors[i]);
mtklein507ef6d2016-01-31 08:02:47 -0800175 rec[i].fColor = SkNx_cast<float>(Sk4b::Load(&c)) * scale;
reedf3182eb2015-11-17 08:12:19 -0800176 if (i > 0) {
177 SkASSERT(rec[i - 1].fPos <= rec[i].fPos);
178 }
179 }
180 } else {
181 // Our fColor values are premultiplied, so converting to SkPMColor is just a matter
182 // of converting the floats down to bytes.
183 unsigned alphaScale = ctx.fPaint->getAlpha() + (ctx.fPaint->getAlpha() >> 7);
184 for (int i = 0; i < count; ++i) {
185 SkPMColor pmc = SkPreMultiplyColor(shader.fOrigColors[i]);
186 pmc = SkAlphaMulQ(pmc, alphaScale);
mtklein507ef6d2016-01-31 08:02:47 -0800187 rec[i].fColor = SkNx_cast<float>(Sk4b::Load(&pmc));
reedf3182eb2015-11-17 08:12:19 -0800188 if (i > 0) {
189 SkASSERT(rec[i - 1].fPos <= rec[i].fPos);
190 }
191 }
192 }
rileya@google.com589708b2012-07-26 20:04:23 +0000193}
194
195#define NO_CHECK_ITER \
196 do { \
reedcaf7e932014-12-18 12:43:08 -0800197 unsigned fi = SkGradFixedToFixed(fx) >> SkGradientShaderBase::kCache32Shift; \
rileya@google.com589708b2012-07-26 20:04:23 +0000198 SkASSERT(fi <= 0xFF); \
199 fx += dx; \
200 *dstC++ = cache[toggle + fi]; \
reed@google.com55853db2013-02-01 19:34:59 +0000201 toggle = next_dither_toggle(toggle); \
rileya@google.com589708b2012-07-26 20:04:23 +0000202 } while (0)
203
204namespace {
205
reedcaf7e932014-12-18 12:43:08 -0800206typedef void (*LinearShadeProc)(TileProc proc, SkGradFixed dx, SkGradFixed fx,
rileya@google.com589708b2012-07-26 20:04:23 +0000207 SkPMColor* dstC, const SkPMColor* cache,
208 int toggle, int count);
209
rileya@google.com589708b2012-07-26 20:04:23 +0000210// Linear interpolation (lerp) is unnecessary if there are no sharp
211// discontinuities in the gradient - which must be true if there are
212// only 2 colors - but it's cheap.
reedcaf7e932014-12-18 12:43:08 -0800213void shadeSpan_linear_vertical_lerp(TileProc proc, SkGradFixed dx, SkGradFixed fx,
rileya@google.com589708b2012-07-26 20:04:23 +0000214 SkPMColor* SK_RESTRICT dstC,
215 const SkPMColor* SK_RESTRICT cache,
216 int toggle, int count) {
217 // We're a vertical gradient, so no change in a span.
218 // If colors change sharply across the gradient, dithering is
219 // insufficient (it subsamples the color space) and we need to lerp.
reedcaf7e932014-12-18 12:43:08 -0800220 unsigned fullIndex = proc(SkGradFixedToFixed(fx));
reed@google.com3c2102c2013-02-01 12:59:40 +0000221 unsigned fi = fullIndex >> SkGradientShaderBase::kCache32Shift;
222 unsigned remainder = fullIndex & ((1 << SkGradientShaderBase::kCache32Shift) - 1);
skia.committer@gmail.com9dde0182013-02-04 12:57:42 +0000223
reed@google.com3c2102c2013-02-01 12:59:40 +0000224 int index0 = fi + toggle;
225 int index1 = index0;
226 if (fi < SkGradientShaderBase::kCache32Count - 1) {
227 index1 += 1;
228 }
229 SkPMColor lerp = SkFastFourByteInterp(cache[index1], cache[index0], remainder);
230 index0 ^= SkGradientShaderBase::kDitherStride32;
231 index1 ^= SkGradientShaderBase::kDitherStride32;
232 SkPMColor dlerp = SkFastFourByteInterp(cache[index1], cache[index0], remainder);
rileya@google.com589708b2012-07-26 20:04:23 +0000233 sk_memset32_dither(dstC, lerp, dlerp, count);
234}
235
reedcaf7e932014-12-18 12:43:08 -0800236void shadeSpan_linear_clamp(TileProc proc, SkGradFixed dx, SkGradFixed fx,
rileya@google.com589708b2012-07-26 20:04:23 +0000237 SkPMColor* SK_RESTRICT dstC,
238 const SkPMColor* SK_RESTRICT cache,
239 int toggle, int count) {
240 SkClampRange range;
reed@google.com3c2102c2013-02-01 12:59:40 +0000241 range.init(fx, dx, count, 0, SkGradientShaderBase::kCache32Count - 1);
reed9d91eb32015-01-28 11:44:48 -0800242 range.validate(count);
rileya@google.com589708b2012-07-26 20:04:23 +0000243
244 if ((count = range.fCount0) > 0) {
245 sk_memset32_dither(dstC,
246 cache[toggle + range.fV0],
reed@google.com55853db2013-02-01 19:34:59 +0000247 cache[next_dither_toggle(toggle) + range.fV0],
rileya@google.com589708b2012-07-26 20:04:23 +0000248 count);
249 dstC += count;
250 }
251 if ((count = range.fCount1) > 0) {
252 int unroll = count >> 3;
253 fx = range.fFx1;
254 for (int i = 0; i < unroll; i++) {
255 NO_CHECK_ITER; NO_CHECK_ITER;
256 NO_CHECK_ITER; NO_CHECK_ITER;
257 NO_CHECK_ITER; NO_CHECK_ITER;
258 NO_CHECK_ITER; NO_CHECK_ITER;
259 }
260 if ((count &= 7) > 0) {
261 do {
262 NO_CHECK_ITER;
263 } while (--count != 0);
264 }
265 }
266 if ((count = range.fCount2) > 0) {
267 sk_memset32_dither(dstC,
268 cache[toggle + range.fV1],
reed@google.com55853db2013-02-01 19:34:59 +0000269 cache[next_dither_toggle(toggle) + range.fV1],
rileya@google.com589708b2012-07-26 20:04:23 +0000270 count);
271 }
272}
273
reedcaf7e932014-12-18 12:43:08 -0800274void shadeSpan_linear_mirror(TileProc proc, SkGradFixed dx, SkGradFixed fx,
rileya@google.com589708b2012-07-26 20:04:23 +0000275 SkPMColor* SK_RESTRICT dstC,
276 const SkPMColor* SK_RESTRICT cache,
277 int toggle, int count) {
278 do {
reedcaf7e932014-12-18 12:43:08 -0800279 unsigned fi = mirror_8bits(SkGradFixedToFixed(fx) >> 8);
rileya@google.com589708b2012-07-26 20:04:23 +0000280 SkASSERT(fi <= 0xFF);
281 fx += dx;
282 *dstC++ = cache[toggle + fi];
reed@google.com55853db2013-02-01 19:34:59 +0000283 toggle = next_dither_toggle(toggle);
rileya@google.com589708b2012-07-26 20:04:23 +0000284 } while (--count != 0);
285}
286
reedcaf7e932014-12-18 12:43:08 -0800287void shadeSpan_linear_repeat(TileProc proc, SkGradFixed dx, SkGradFixed fx,
rileya@google.com589708b2012-07-26 20:04:23 +0000288 SkPMColor* SK_RESTRICT dstC,
289 const SkPMColor* SK_RESTRICT cache,
290 int toggle, int count) {
291 do {
reedcaf7e932014-12-18 12:43:08 -0800292 unsigned fi = repeat_8bits(SkGradFixedToFixed(fx) >> 8);
rileya@google.com589708b2012-07-26 20:04:23 +0000293 SkASSERT(fi <= 0xFF);
294 fx += dx;
295 *dstC++ = cache[toggle + fi];
reed@google.com55853db2013-02-01 19:34:59 +0000296 toggle = next_dither_toggle(toggle);
rileya@google.com589708b2012-07-26 20:04:23 +0000297 } while (--count != 0);
298}
299
300}
301
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000302void SkLinearGradient::LinearGradientContext::shadeSpan(int x, int y, SkPMColor* SK_RESTRICT dstC,
303 int count) {
rileya@google.com589708b2012-07-26 20:04:23 +0000304 SkASSERT(count > 0);
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000305 const SkLinearGradient& linearGradient = static_cast<const SkLinearGradient&>(fShader);
306
reedf3182eb2015-11-17 08:12:19 -0800307 if (SkShader::kClamp_TileMode == linearGradient.fTileMode &&
308 kLinear_MatrixClass == fDstToIndexClass)
309 {
310 this->shade4_clamp(x, y, dstC, count);
311 return;
312 }
reedf3182eb2015-11-17 08:12:19 -0800313
rileya@google.com589708b2012-07-26 20:04:23 +0000314 SkPoint srcPt;
315 SkMatrix::MapXYProc dstProc = fDstToIndexProc;
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000316 TileProc proc = linearGradient.fTileProc;
317 const SkPMColor* SK_RESTRICT cache = fCache->getCache32();
reed@google.com55853db2013-02-01 19:34:59 +0000318 int toggle = init_dither_toggle(x, y);
rileya@google.com589708b2012-07-26 20:04:23 +0000319
320 if (fDstToIndexClass != kPerspective_MatrixClass) {
321 dstProc(fDstToIndex, SkIntToScalar(x) + SK_ScalarHalf,
322 SkIntToScalar(y) + SK_ScalarHalf, &srcPt);
Florin Malita63b61562017-02-10 10:42:49 -0500323 SkGradFixed dx, fx = SkScalarPinToGradFixed(srcPt.fX);
rileya@google.com589708b2012-07-26 20:04:23 +0000324
325 if (fDstToIndexClass == kFixedStepInX_MatrixClass) {
benjaminwagner8e175562016-02-16 10:09:40 -0800326 const auto step = fDstToIndex.fixedStepInX(SkIntToScalar(y));
reedcaf7e932014-12-18 12:43:08 -0800327 // todo: do we need a real/high-precision value for dx here?
Florin Malita63b61562017-02-10 10:42:49 -0500328 dx = SkScalarPinToGradFixed(step.fX);
rileya@google.com589708b2012-07-26 20:04:23 +0000329 } else {
330 SkASSERT(fDstToIndexClass == kLinear_MatrixClass);
Florin Malita63b61562017-02-10 10:42:49 -0500331 dx = SkScalarPinToGradFixed(fDstToIndex.getScaleX());
rileya@google.com589708b2012-07-26 20:04:23 +0000332 }
333
334 LinearShadeProc shadeProc = shadeSpan_linear_repeat;
reed@google.com53009ba2013-02-07 20:28:49 +0000335 if (0 == dx) {
rileya@google.com589708b2012-07-26 20:04:23 +0000336 shadeProc = shadeSpan_linear_vertical_lerp;
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000337 } else if (SkShader::kClamp_TileMode == linearGradient.fTileMode) {
rileya@google.com589708b2012-07-26 20:04:23 +0000338 shadeProc = shadeSpan_linear_clamp;
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000339 } else if (SkShader::kMirror_TileMode == linearGradient.fTileMode) {
rileya@google.com589708b2012-07-26 20:04:23 +0000340 shadeProc = shadeSpan_linear_mirror;
341 } else {
commit-bot@chromium.org87fcd952014-04-23 19:10:51 +0000342 SkASSERT(SkShader::kRepeat_TileMode == linearGradient.fTileMode);
rileya@google.com589708b2012-07-26 20:04:23 +0000343 }
344 (*shadeProc)(proc, dx, fx, dstC, cache, toggle, count);
345 } else {
346 SkScalar dstX = SkIntToScalar(x);
347 SkScalar dstY = SkIntToScalar(y);
348 do {
349 dstProc(fDstToIndex, dstX, dstY, &srcPt);
350 unsigned fi = proc(SkScalarToFixed(srcPt.fX));
351 SkASSERT(fi <= 0xFFFF);
352 *dstC++ = cache[toggle + (fi >> kCache32Shift)];
reed@google.com55853db2013-02-01 19:34:59 +0000353 toggle = next_dither_toggle(toggle);
rileya@google.com589708b2012-07-26 20:04:23 +0000354 dstX += SK_Scalar1;
355 } while (--count != 0);
356 }
357}
358
rileya@google.com589708b2012-07-26 20:04:23 +0000359SkShader::GradientType SkLinearGradient::asAGradient(GradientInfo* info) const {
360 if (info) {
361 commonAsAGradient(info);
362 info->fPoint[0] = fStart;
363 info->fPoint[1] = fEnd;
364 }
365 return kLinear_GradientType;
366}
367
bsalomon@google.comcf8fb1f2012-08-02 14:03:32 +0000368#if SK_SUPPORT_GPU
369
brianosmanb9c51372016-09-15 11:09:45 -0700370#include "GrColorSpaceXform.h"
Brian Salomon94efbf52016-11-29 13:43:05 -0500371#include "GrShaderCaps.h"
egdaniel7ea439b2015-12-03 09:20:44 -0800372#include "glsl/GrGLSLFragmentShaderBuilder.h"
dandov9de5b512014-06-10 14:38:28 -0700373#include "SkGr.h"
bsalomon@google.com2eaaefd2012-10-29 19:51:22 +0000374
rileya@google.comd7cc6512012-07-27 14:00:39 +0000375/////////////////////////////////////////////////////////////////////
376
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000377class GrLinearGradient : public GrGradientEffect {
378public:
fmenozzi55d318d2016-08-09 08:05:57 -0700379 class GLSLLinearProcessor;
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000380
brianosman9557c272016-09-15 06:59:15 -0700381 static sk_sp<GrFragmentProcessor> Make(const CreateArgs& args) {
382 return sk_sp<GrFragmentProcessor>(new GrLinearGradient(args));
bsalomon@google.com0ac6af42013-01-16 15:16:18 +0000383 }
384
Brian Salomond3b65972017-03-22 12:05:03 -0400385 ~GrLinearGradient() override {}
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000386
mtklein36352bf2015-03-25 18:17:31 -0700387 const char* name() const override { return "Linear Gradient"; }
joshualitteb2a6762014-12-04 11:35:33 -0800388
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000389private:
Brian Salomon587e08f2017-01-27 10:59:27 -0500390 GrLinearGradient(const CreateArgs& args) : INHERITED(args, args.fShader->colorsAreOpaque()) {
joshualitteb2a6762014-12-04 11:35:33 -0800391 this->initClassID<GrLinearGradient>();
392 }
wangyix4b3050b2015-08-04 07:59:37 -0700393
fmenozzi55d318d2016-08-09 08:05:57 -0700394 GrGLSLFragmentProcessor* onCreateGLSLInstance() const override;
wangyixb1daa862015-08-18 11:29:31 -0700395
Brian Salomon94efbf52016-11-29 13:43:05 -0500396 virtual void onGetGLSLProcessorKey(const GrShaderCaps& caps,
fmenozzi55d318d2016-08-09 08:05:57 -0700397 GrProcessorKeyBuilder* b) const override;
wangyix4b3050b2015-08-04 07:59:37 -0700398
joshualittb0a8a372014-09-23 09:50:21 -0700399 GR_DECLARE_FRAGMENT_PROCESSOR_TEST;
rileya@google.com98e8b6d2012-07-31 20:38:06 +0000400
401 typedef GrGradientEffect INHERITED;
402};
403
404/////////////////////////////////////////////////////////////////////
405
fmenozzi55d318d2016-08-09 08:05:57 -0700406class GrLinearGradient::GLSLLinearProcessor : public GrGradientEffect::GLSLProcessor {
407public:
408 GLSLLinearProcessor(const GrProcessor&) {}
409
Brian Salomond3b65972017-03-22 12:05:03 -0400410 ~GLSLLinearProcessor() override {}
fmenozzi55d318d2016-08-09 08:05:57 -0700411
412 virtual void emitCode(EmitArgs&) override;
413
Brian Salomon94efbf52016-11-29 13:43:05 -0500414 static void GenKey(const GrProcessor& processor, const GrShaderCaps&, GrProcessorKeyBuilder* b) {
fmenozzi55d318d2016-08-09 08:05:57 -0700415 b->add32(GenBaseGradientKey(processor));
416 }
417
418private:
419 typedef GrGradientEffect::GLSLProcessor INHERITED;
420};
421
422/////////////////////////////////////////////////////////////////////
423
424GrGLSLFragmentProcessor* GrLinearGradient::onCreateGLSLInstance() const {
425 return new GrLinearGradient::GLSLLinearProcessor(*this);
426}
427
Brian Salomon94efbf52016-11-29 13:43:05 -0500428void GrLinearGradient::onGetGLSLProcessorKey(const GrShaderCaps& caps,
fmenozzi55d318d2016-08-09 08:05:57 -0700429 GrProcessorKeyBuilder* b) const {
430 GrLinearGradient::GLSLLinearProcessor::GenKey(*this, caps, b);
431}
432
433/////////////////////////////////////////////////////////////////////
434
joshualittb0a8a372014-09-23 09:50:21 -0700435GR_DEFINE_FRAGMENT_PROCESSOR_TEST(GrLinearGradient);
bsalomon@google.comd4726202012-08-03 14:34:46 +0000436
Hal Canary6f6961e2017-01-31 13:50:44 -0500437#if GR_TEST_UTILS
bungeman06ca8ec2016-06-09 08:01:03 -0700438sk_sp<GrFragmentProcessor> GrLinearGradient::TestCreate(GrProcessorTestData* d) {
joshualitt0067ff52015-07-08 14:26:19 -0700439 SkPoint points[] = {{d->fRandom->nextUScalar1(), d->fRandom->nextUScalar1()},
440 {d->fRandom->nextUScalar1(), d->fRandom->nextUScalar1()}};
bsalomon@google.comd4726202012-08-03 14:34:46 +0000441
Brian Osman3f748602016-10-03 18:29:03 -0400442 RandomGradientParams params(d->fRandom);
Brian Osmana2196532016-10-17 12:48:13 -0400443 auto shader = params.fUseColors4f ?
444 SkGradientShader::MakeLinear(points, params.fColors4f, params.fColorSpace, params.fStops,
445 params.fColorCount, params.fTileMode) :
446 SkGradientShader::MakeLinear(points, params.fColors, params.fStops,
447 params.fColorCount, params.fTileMode);
Brian Osman9f532a32016-10-19 11:12:09 -0400448 GrTest::TestAsFPArgs asFPArgs(d);
Florin Malita4aed1382017-05-25 10:38:07 -0400449 sk_sp<GrFragmentProcessor> fp = as_SB(shader)->asFragmentProcessor(asFPArgs.args());
bsalomonc21b09e2015-08-28 18:46:56 -0700450 GrAlwaysAssert(fp);
joshualittb0a8a372014-09-23 09:50:21 -0700451 return fp;
bsalomon@google.comd4726202012-08-03 14:34:46 +0000452}
Hal Canary6f6961e2017-01-31 13:50:44 -0500453#endif
bsalomon@google.comd4726202012-08-03 14:34:46 +0000454
455/////////////////////////////////////////////////////////////////////
456
fmenozzi55d318d2016-08-09 08:05:57 -0700457void GrLinearGradient::GLSLLinearProcessor::emitCode(EmitArgs& args) {
wangyix7c157a92015-07-22 15:08:53 -0700458 const GrLinearGradient& ge = args.fFp.cast<GrLinearGradient>();
egdaniel7ea439b2015-12-03 09:20:44 -0800459 this->emitUniforms(args.fUniformHandler, ge);
bsalomon1a1aa932016-09-12 09:30:36 -0700460 SkString t = args.fFragBuilder->ensureCoords2D(args.fTransformedCoords[0]);
bsalomon@google.comd8b5fac2012-11-01 17:02:46 +0000461 t.append(".x");
egdaniel7ea439b2015-12-03 09:20:44 -0800462 this->emitColor(args.fFragBuilder,
463 args.fUniformHandler,
Brian Salomon1edc5b92016-11-29 13:43:46 -0500464 args.fShaderCaps,
fmenozzi55d318d2016-08-09 08:05:57 -0700465 ge,
466 t.c_str(),
egdaniel4ca2e602015-11-18 08:01:26 -0800467 args.fOutputColor,
468 args.fInputColor,
cdalton3f6f76f2016-04-11 12:18:09 -0700469 args.fTexSamplers);
rileya@google.comd7cc6512012-07-27 14:00:39 +0000470}
471
472/////////////////////////////////////////////////////////////////////
473
brianosman839345d2016-07-22 11:04:53 -0700474sk_sp<GrFragmentProcessor> SkLinearGradient::asFragmentProcessor(const AsFPArgs& args) const {
475 SkASSERT(args.fContext);
mtklein3f3b3d02014-12-01 11:47:08 -0800476
bsalomon@google.comdfdb7e52012-10-16 15:19:45 +0000477 SkMatrix matrix;
bsalomon@google.comf94b3a42012-10-31 18:09:01 +0000478 if (!this->getLocalMatrix().invert(&matrix)) {
bsalomonc21b09e2015-08-28 18:46:56 -0700479 return nullptr;
bsalomon@google.comdfdb7e52012-10-16 15:19:45 +0000480 }
brianosman839345d2016-07-22 11:04:53 -0700481 if (args.fLocalMatrix) {
commit-bot@chromium.org96fb7482014-05-09 20:28:11 +0000482 SkMatrix inv;
brianosman839345d2016-07-22 11:04:53 -0700483 if (!args.fLocalMatrix->invert(&inv)) {
bsalomonc21b09e2015-08-28 18:46:56 -0700484 return nullptr;
commit-bot@chromium.org96fb7482014-05-09 20:28:11 +0000485 }
486 matrix.postConcat(inv);
487 }
bsalomon@google.comf94b3a42012-10-31 18:09:01 +0000488 matrix.postConcat(fPtsToUnit);
mtklein3f3b3d02014-12-01 11:47:08 -0800489
brianosmanb9c51372016-09-15 11:09:45 -0700490 sk_sp<GrColorSpaceXform> colorSpaceXform = GrColorSpaceXform::Make(fColorSpace.get(),
491 args.fDstColorSpace);
brianosman9557c272016-09-15 06:59:15 -0700492 sk_sp<GrFragmentProcessor> inner(GrLinearGradient::Make(
brianosmanb9c51372016-09-15 11:09:45 -0700493 GrGradientEffect::CreateArgs(args.fContext, this, &matrix, fTileMode,
494 std::move(colorSpaceXform), SkToBool(args.fDstColorSpace))));
bungeman06ca8ec2016-06-09 08:01:03 -0700495 return GrFragmentProcessor::MulOutputByInputAlpha(std::move(inner));
rileya@google.comd7cc6512012-07-27 14:00:39 +0000496}
497
bsalomon@google.comcf8fb1f2012-08-02 14:03:32 +0000498
499#endif
robertphillips@google.com76f9e932013-01-15 20:17:47 +0000500
commit-bot@chromium.org0f10f7b2014-03-13 18:02:17 +0000501#ifndef SK_IGNORE_TO_STRING
robertphillips@google.com76f9e932013-01-15 20:17:47 +0000502void SkLinearGradient::toString(SkString* str) const {
503 str->append("SkLinearGradient (");
504
505 str->appendf("start: (%f, %f)", fStart.fX, fStart.fY);
506 str->appendf(" end: (%f, %f) ", fEnd.fX, fEnd.fY);
507
508 this->INHERITED::toString(str);
509
510 str->append(")");
511}
512#endif
reedf3182eb2015-11-17 08:12:19 -0800513
514///////////////////////////////////////////////////////////////////////////////////////////////////
515
516#include "SkNx.h"
517
518static const SkLinearGradient::LinearGradientContext::Rec*
519find_forward(const SkLinearGradient::LinearGradientContext::Rec rec[], float tiledX) {
520 SkASSERT(tiledX >= 0 && tiledX <= 1);
521
522 SkASSERT(rec[0].fPos >= 0 && rec[0].fPos <= 1);
523 SkASSERT(rec[1].fPos >= 0 && rec[1].fPos <= 1);
524 SkASSERT(rec[0].fPos <= rec[1].fPos);
525 rec += 1;
lsalzmanf2b86622016-01-22 14:03:02 -0800526 while (rec->fPos < tiledX || rec->fPosScale == 0) {
reedf3182eb2015-11-17 08:12:19 -0800527 SkASSERT(rec[0].fPos >= 0 && rec[0].fPos <= 1);
528 SkASSERT(rec[1].fPos >= 0 && rec[1].fPos <= 1);
529 SkASSERT(rec[0].fPos <= rec[1].fPos);
530 rec += 1;
531 }
532 return rec - 1;
533}
534
535static const SkLinearGradient::LinearGradientContext::Rec*
536find_backward(const SkLinearGradient::LinearGradientContext::Rec rec[], float tiledX) {
537 SkASSERT(tiledX >= 0 && tiledX <= 1);
538
539 SkASSERT(rec[0].fPos >= 0 && rec[0].fPos <= 1);
540 SkASSERT(rec[1].fPos >= 0 && rec[1].fPos <= 1);
541 SkASSERT(rec[0].fPos <= rec[1].fPos);
lsalzmanf2b86622016-01-22 14:03:02 -0800542 while (tiledX < rec->fPos || rec[1].fPosScale == 0) {
reedf3182eb2015-11-17 08:12:19 -0800543 rec -= 1;
544 SkASSERT(rec[0].fPos >= 0 && rec[0].fPos <= 1);
545 SkASSERT(rec[1].fPos >= 0 && rec[1].fPos <= 1);
546 SkASSERT(rec[0].fPos <= rec[1].fPos);
547 }
548 return rec;
549}
550
fmalita0ce4f232016-12-06 08:57:47 -0800551// As an optimization, we can apply the dither bias before interpolation -- but only when
552// operating in premul space (apply_alpha == false). When apply_alpha == true, we must
553// defer the bias application until after premul.
554//
555// The following two helpers encapsulate this logic: pre_bias is called before interpolation,
556// and effects the bias when apply_alpha == false, while post_bias is called after premul and
557// effects the bias for the apply_alpha == true case.
558
559template <bool apply_alpha>
560Sk4f pre_bias(const Sk4f& x, const Sk4f& bias) {
fmalita0ce4f232016-12-06 08:57:47 -0800561 return apply_alpha ? x : x + bias;
fmalita0ce4f232016-12-06 08:57:47 -0800562}
563
564template <bool apply_alpha>
565Sk4f post_bias(const Sk4f& x, const Sk4f& bias) {
fmalita0ce4f232016-12-06 08:57:47 -0800566 return apply_alpha ? x + bias : x;
fmalita0ce4f232016-12-06 08:57:47 -0800567}
568
569template <bool apply_alpha> SkPMColor trunc_from_255(const Sk4f& x, const Sk4f& bias) {
reedf3182eb2015-11-17 08:12:19 -0800570 SkPMColor c;
fmalita0ce4f232016-12-06 08:57:47 -0800571 Sk4f c4f255 = x;
572 if (apply_alpha) {
Lee Salzmana8362672017-06-01 14:45:29 -0400573#ifdef SK_SUPPORT_LEGACY_GRADIENT_ALPHATRUNC
574 static constexpr float alphaScale = 1;
575#else
576 // Due to use of multiplication by the 1/255 reciprocal instead of division by 255,
577 // non-integer alpha values very close to their ceiling can push the color values
578 // above the alpha value, which will become an invalid premultiplied color. So nudge
579 // alpha up slightly by a compensating scale to keep it above the color values.
580 // To do this, multiply alpha by a number slightly greater than 1 to compensate
581 // for error in scaling from the 1/255 approximation. Since this error is then
582 // scaled by the alpha value, we need to scale the epsilon by 255 to get a safe
583 // upper bound on the error.
584 static constexpr float alphaScale = 1 + 255*std::numeric_limits<float>::epsilon();
585#endif
fmalita0ce4f232016-12-06 08:57:47 -0800586 const float scale = x[SkPM4f::A] * (1 / 255.f);
Lee Salzmana8362672017-06-01 14:45:29 -0400587 c4f255 *= Sk4f(scale, scale, scale, alphaScale);
fmalita0ce4f232016-12-06 08:57:47 -0800588 }
589 SkNx_cast<uint8_t>(post_bias<apply_alpha>(c4f255, bias)).store(&c);
Florin Malitaaaa6d772016-12-07 14:57:04 -0500590
reedf3182eb2015-11-17 08:12:19 -0800591 return c;
592}
593
594template <bool apply_alpha> void fill(SkPMColor dst[], int count,
fmalita0ce4f232016-12-06 08:57:47 -0800595 const Sk4f& c4, const Sk4f& bias0, const Sk4f& bias1) {
596 const SkPMColor c0 = trunc_from_255<apply_alpha>(pre_bias<apply_alpha>(c4, bias0), bias0);
597 const SkPMColor c1 = trunc_from_255<apply_alpha>(pre_bias<apply_alpha>(c4, bias1), bias1);
598 sk_memset32_dither(dst, c0, c1, count);
reedf3182eb2015-11-17 08:12:19 -0800599}
600
601template <bool apply_alpha> void fill(SkPMColor dst[], int count, const Sk4f& c4) {
602 // Assumes that c4 does not need to be dithered.
fmalita0ce4f232016-12-06 08:57:47 -0800603 sk_memset32(dst, trunc_from_255<apply_alpha>(c4, 0), count);
reedf3182eb2015-11-17 08:12:19 -0800604}
605
606/*
607 * TODOs
608 *
609 * - tilemodes
610 * - interp before or after premul
611 * - perspective
612 * - optimizations
613 * - use fixed (32bit or 16bit) instead of floats?
614 */
615
616static Sk4f lerp_color(float fx, const SkLinearGradient::LinearGradientContext::Rec* rec) {
reedde3aac82015-11-22 13:00:04 -0800617 SkASSERT(fx >= rec[0].fPos);
618 SkASSERT(fx <= rec[1].fPos);
619
reedf3182eb2015-11-17 08:12:19 -0800620 const float p0 = rec[0].fPos;
621 const Sk4f c0 = rec[0].fColor;
622 const Sk4f c1 = rec[1].fColor;
623 const Sk4f diffc = c1 - c0;
624 const float scale = rec[1].fPosScale;
625 const float t = (fx - p0) * scale;
626 return c0 + Sk4f(t) * diffc;
627}
628
629template <bool apply_alpha> void ramp(SkPMColor dstC[], int n, const Sk4f& c, const Sk4f& dc,
630 const Sk4f& dither0, const Sk4f& dither1) {
631 Sk4f dc2 = dc + dc;
632 Sk4f dc4 = dc2 + dc2;
fmalita0ce4f232016-12-06 08:57:47 -0800633 Sk4f cd0 = pre_bias<apply_alpha>(c , dither0);
634 Sk4f cd1 = pre_bias<apply_alpha>(c + dc, dither1);
reedf3182eb2015-11-17 08:12:19 -0800635 Sk4f cd2 = cd0 + dc2;
636 Sk4f cd3 = cd1 + dc2;
637 while (n >= 4) {
mtklein9db43ac2015-12-01 07:10:21 -0800638 if (!apply_alpha) {
mtklein6f37b4a2015-12-14 11:25:18 -0800639 Sk4f_ToBytes((uint8_t*)dstC, cd0, cd1, cd2, cd3);
mtklein9db43ac2015-12-01 07:10:21 -0800640 dstC += 4;
641 } else {
fmalita0ce4f232016-12-06 08:57:47 -0800642 *dstC++ = trunc_from_255<apply_alpha>(cd0, dither0);
643 *dstC++ = trunc_from_255<apply_alpha>(cd1, dither1);
644 *dstC++ = trunc_from_255<apply_alpha>(cd2, dither0);
645 *dstC++ = trunc_from_255<apply_alpha>(cd3, dither1);
mtklein9db43ac2015-12-01 07:10:21 -0800646 }
reedf3182eb2015-11-17 08:12:19 -0800647 cd0 = cd0 + dc4;
648 cd1 = cd1 + dc4;
649 cd2 = cd2 + dc4;
650 cd3 = cd3 + dc4;
651 n -= 4;
652 }
653 if (n & 2) {
fmalita0ce4f232016-12-06 08:57:47 -0800654 *dstC++ = trunc_from_255<apply_alpha>(cd0, dither0);
655 *dstC++ = trunc_from_255<apply_alpha>(cd1, dither1);
reedf3182eb2015-11-17 08:12:19 -0800656 cd0 = cd0 + dc2;
657 }
658 if (n & 1) {
fmalita0ce4f232016-12-06 08:57:47 -0800659 *dstC++ = trunc_from_255<apply_alpha>(cd0, dither0);
reedf3182eb2015-11-17 08:12:19 -0800660 }
661}
662
663template <bool apply_alpha, bool dx_is_pos>
664void SkLinearGradient::LinearGradientContext::shade4_dx_clamp(SkPMColor dstC[], int count,
665 float fx, float dx, float invDx,
666 const float dither[2]) {
667 Sk4f dither0(dither[0]);
668 Sk4f dither1(dither[1]);
669 const Rec* rec = fRecs.begin();
670
671 const Sk4f dx4 = Sk4f(dx);
672 SkDEBUGCODE(SkPMColor* endDstC = dstC + count;)
673
674 if (dx_is_pos) {
675 if (fx < 0) {
fmalita7b38e3c2016-05-26 11:13:52 -0700676 // count is guaranteed to be positive, but the first arg may overflow int32 after
677 // increment => casting to uint32 ensures correct clamping.
fmalita7dcb1312016-05-26 18:10:24 -0700678 int n = SkTMin<uint32_t>(static_cast<uint32_t>(SkFloatToIntFloor(-fx * invDx)) + 1,
679 count);
fmalita7b38e3c2016-05-26 11:13:52 -0700680 SkASSERT(n > 0);
reedf3182eb2015-11-17 08:12:19 -0800681 fill<apply_alpha>(dstC, n, rec[0].fColor);
682 count -= n;
683 dstC += n;
684 fx += n * dx;
685 SkASSERT(0 == count || fx >= 0);
686 if (n & 1) {
687 SkTSwap(dither0, dither1);
688 }
689 }
690 } else { // dx < 0
691 if (fx > 1) {
fmalita7b38e3c2016-05-26 11:13:52 -0700692 // count is guaranteed to be positive, but the first arg may overflow int32 after
693 // increment => casting to uint32 ensures correct clamping.
fmalita7dcb1312016-05-26 18:10:24 -0700694 int n = SkTMin<uint32_t>(static_cast<uint32_t>(SkFloatToIntFloor((1 - fx) * invDx)) + 1,
695 count);
fmalita7b38e3c2016-05-26 11:13:52 -0700696 SkASSERT(n > 0);
reedf3182eb2015-11-17 08:12:19 -0800697 fill<apply_alpha>(dstC, n, rec[fRecs.count() - 1].fColor);
698 count -= n;
699 dstC += n;
700 fx += n * dx;
701 SkASSERT(0 == count || fx <= 1);
702 if (n & 1) {
703 SkTSwap(dither0, dither1);
704 }
705 }
706 }
707 SkASSERT(count >= 0);
708
709 const Rec* r;
710 if (dx_is_pos) {
711 r = fRecs.begin(); // start at the beginning
712 } else {
713 r = fRecs.begin() + fRecs.count() - 2; // start at the end
714 }
715
716 while (count > 0) {
717 if (dx_is_pos) {
718 if (fx >= 1) {
719 fill<apply_alpha>(dstC, count, rec[fRecs.count() - 1].fColor);
720 return;
721 }
722 } else { // dx < 0
723 if (fx <= 0) {
724 fill<apply_alpha>(dstC, count, rec[0].fColor);
725 return;
726 }
727 }
728
729 if (dx_is_pos) {
730 r = find_forward(r, fx);
731 } else {
732 r = find_backward(r, fx);
733 }
734 SkASSERT(r >= fRecs.begin() && r < fRecs.begin() + fRecs.count() - 1);
735
736 const float p0 = r[0].fPos;
737 const Sk4f c0 = r[0].fColor;
738 const float p1 = r[1].fPos;
739 const Sk4f diffc = Sk4f(r[1].fColor) - c0;
740 const float scale = r[1].fPosScale;
741 const float t = (fx - p0) * scale;
742 const Sk4f c = c0 + Sk4f(t) * diffc;
743 const Sk4f dc = diffc * dx4 * Sk4f(scale);
744
745 int n;
746 if (dx_is_pos) {
747 n = SkTMin((int)((p1 - fx) * invDx) + 1, count);
748 } else {
749 n = SkTMin((int)((p0 - fx) * invDx) + 1, count);
750 }
751
752 fx += n * dx;
reedaeab8ea2016-01-05 10:01:38 -0800753 // fx should now outside of the p0..p1 interval. However, due to float precision loss,
754 // its possible that fx is slightly too small/large, so we clamp it.
reedf3182eb2015-11-17 08:12:19 -0800755 if (dx_is_pos) {
reedaeab8ea2016-01-05 10:01:38 -0800756 fx = SkTMax(fx, p1);
reedf3182eb2015-11-17 08:12:19 -0800757 } else {
reedaeab8ea2016-01-05 10:01:38 -0800758 fx = SkTMin(fx, p0);
reedf3182eb2015-11-17 08:12:19 -0800759 }
760
761 ramp<apply_alpha>(dstC, n, c, dc, dither0, dither1);
762 dstC += n;
763 SkASSERT(dstC <= endDstC);
mtklein9db43ac2015-12-01 07:10:21 -0800764
reedf3182eb2015-11-17 08:12:19 -0800765 if (n & 1) {
766 SkTSwap(dither0, dither1);
767 }
reedaeab8ea2016-01-05 10:01:38 -0800768
769 count -= n;
770 SkASSERT(count >= 0);
reedf3182eb2015-11-17 08:12:19 -0800771 }
772}
773
774void SkLinearGradient::LinearGradientContext::shade4_clamp(int x, int y, SkPMColor dstC[],
775 int count) {
776 SkASSERT(count > 0);
777 SkASSERT(kLinear_MatrixClass == fDstToIndexClass);
778
779 SkPoint srcPt;
780 fDstToIndexProc(fDstToIndex, x + SK_ScalarHalf, y + SK_ScalarHalf, &srcPt);
781 float fx = srcPt.x();
782 const float dx = fDstToIndex.getScaleX();
783
784 // Default our dither bias values to 1/2, (rounding), which is no dithering
785 float dither0 = 0.5f;
786 float dither1 = 0.5f;
787 if (fDither) {
788 const float ditherCell[] = {
789 1/8.0f, 5/8.0f,
790 7/8.0f, 3/8.0f,
791 };
792 const int rowIndex = (y & 1) << 1;
793 dither0 = ditherCell[rowIndex];
794 dither1 = ditherCell[rowIndex + 1];
795 if (x & 1) {
796 SkTSwap(dither0, dither1);
797 }
798 }
799 const float dither[2] = { dither0, dither1 };
reedf3182eb2015-11-17 08:12:19 -0800800
fmalita2b469132015-11-23 08:30:23 -0800801 if (SkScalarNearlyZero(dx * count)) { // gradient is vertical
reedde3aac82015-11-22 13:00:04 -0800802 const float pinFx = SkTPin(fx, 0.0f, 1.0f);
803 Sk4f c = lerp_color(pinFx, find_forward(fRecs.begin(), pinFx));
reedf3182eb2015-11-17 08:12:19 -0800804 if (fApplyAlphaAfterInterp) {
fmalita0ce4f232016-12-06 08:57:47 -0800805 fill<true>(dstC, count, c, dither0, dither1);
reedf3182eb2015-11-17 08:12:19 -0800806 } else {
fmalita0ce4f232016-12-06 08:57:47 -0800807 fill<false>(dstC, count, c, dither0, dither1);
reedf3182eb2015-11-17 08:12:19 -0800808 }
809 return;
810 }
811
James Zern44e91c92016-11-09 19:22:46 -0800812 SkASSERT(0.f != dx);
813 const float invDx = 1 / dx;
reedf3182eb2015-11-17 08:12:19 -0800814 if (dx > 0) {
815 if (fApplyAlphaAfterInterp) {
816 this->shade4_dx_clamp<true, true>(dstC, count, fx, dx, invDx, dither);
817 } else {
818 this->shade4_dx_clamp<false, true>(dstC, count, fx, dx, invDx, dither);
819 }
820 } else {
821 if (fApplyAlphaAfterInterp) {
822 this->shade4_dx_clamp<true, false>(dstC, count, fx, dx, invDx, dither);
823 } else {
824 this->shade4_dx_clamp<false, false>(dstC, count, fx, dx, invDx, dither);
825 }
826 }
827}